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首页> 外文期刊>Physical review letters >Correlations in a BEC Collision: First-Principles Quantum Dynamics with 150 000 Atoms
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Correlations in a BEC Collision: First-Principles Quantum Dynamics with 150 000 Atoms

机译:BEC碰撞中的相关性:具有15万个原子的第一性原理量子动力学

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摘要

The quantum dynamics of colliding Bose-Einstein condensates with 150 000 atoms are simulated directly from the Hamiltonian using the stochastic positive-P method. Two-body correlations between the scattered atoms and their velocity distribution are found for experimentally accessible parameters. Hanbury Brown-Twiss or thermal-like correlations are seen for copropagating atoms, while number correlations for counterpropagating atoms are even stronger than thermal correlations at short times. The coherent phase grains grow in size as the collision progresses with the onset of growth coinciding with the beginning of stimulated scattering. The method is versatile and usable for a range of cold atom systems.
机译:使用随机正P方法直接从哈密顿量中模拟了具有15万个原子的碰撞的玻色-爱因斯坦凝聚物的量子动力学。发现分散原子及其速度分布之间的两体相关性是实验可访问的参数。对于共同传播的原子,我们看到了Hanbury Brown-Twiss或类似热的相关性,而在短时间内,相对传播的原子的数量相关性甚至强于热相关性。随着碰撞的进行,随着生长的开始与受激散射的开始相一致,相干相的晶粒尺寸逐渐增大。该方法是通用的,可用于一系列冷原子系统。

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